Theorems · Theorem · functional analysis
LinearIsometryEquiv.continuousWithinAt
∀ {R : Type u_1} {R₂ : Type u_2} {E : Type u_5} {E₂ : Type u_6} [inst : Semiring R] [inst_1 : Semiring R₂]
{σ₁₂ : R →+* R₂} {σ₂₁ : R₂ →+* R} [inst_2 : RingHomInvPair σ₁₂ σ₂₁] [inst_3 : RingHomInvPair σ₂₁ σ₁₂]
[inst_4 : SeminormedAddCommGroup E] [inst_5 : SeminormedAddCommGroup E₂] [inst_6 : Module R E] [inst_7 : Module R₂ E₂]
(e : E ≃ₛₗᵢ[σ₁₂] E₂) {s : Set E} {x : E}, ContinuousWithinAt (⇑e) s x- Cited by
- 0 results in Mathlib
- Foundations
- Depth 159 from the axioms · uses propext, Classical.choice, Quot.sound
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Cites11
Mathlib declarations this one mentions in its statement or cites explicitly in its proof. Plumbing is filtered out.
- DFunLike.coestatement · cited by 62,936
- Setstatement and proof · cited by 53,352
- Modulestatement and proof · cited by 20,661
- Semiringstatement and proof · cited by 13,802
- RingHomstatement and proof · cited by 10,189
- SeminormedAddCommGroupstatement and proof · cited by 2,671
- LinearIsometryEquivstatement and proof · cited by 748
- RingHomInvPairstatement and proof · cited by 523
- ContinuousWithinAtstatement · cited by 512
- Continuous.continuousWithinAtproof · cited by 54
- LinearIsometryEquiv.continuousproof · cited by 14
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